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Functional effects of enhancing or silencing adenosine A2b receptors in cardiac fibroblasts.

机译:增强或沉默心脏成纤维细胞中腺苷A2b受体的功能作用。

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Cardiac fibroblasts (CF) express adenosine (ADO) receptors, and pharmacological evidence suggests the possible involvement of the A2 (A2a and A2b) receptor (A2aR and A2bR) subtypes in inhibiting cell functions involved in fibrosis. The main objective of this study was to define the contributions of A2a and/or A2b receptors in modulating ADO-induced decreases in CF functions. For this purpose, CF were either treated pharmacologically or had the A2aR or A2bR levels modified through the use of recombinant adenovirus or siRNA. The assessment of mRNA expression in adult rat CF yielded evidence for A1R, A2bR, A2a), and A3R. Endogenously or exogenously enhanced ADO significantly inhibits CF proliferation, collagen, and protein synthesis. A2R and A2aR agonists, although capable of inhibiting CF protein and collagen synthesis, were unable to define the contributions derived from A2aR or A2bR. Overexpression of A2bR in CF yielded significant decreases in basal levels of collagen and protein synthesis and correlated with increases in cAMP levels. However, at higher doses of ADO receptor agonists, significant increases in protein and collagen synthesis were observed. CF with underexpression of A2bR yielded increases in protein and collagen synthesis. In contrast, A2aR underexpression did not modify ADO-induced decreases in CF protein or collagen synthesis. In conclusion, results derived from the molecular manipulation of receptor levels indicate that A2bR are critically involved in ADO-mediated inhibition of CF functions.
机译:心脏成纤维细胞(CF)表达腺苷(ADO)受体,并且药理证据表明A2(A2a和A2b)受体(A2aR和A2bR)亚型可能参与抑制参与纤维化的细胞功能。这项研究的主要目的是确定A2a和/或A2b受体在调节ADO诱导的CF功能下降中的作用。为此,对CF进行了药理处理,或者通过使用重组腺病毒或siRNA对其A2aR或A2bR的水平进行了修改。对成年大鼠CF中mRNA表达的评估产生了A1R,A2bR,A2a)和A3R的证据。内源性或外源性增强的ADO显着抑制CF增殖,胶原蛋白和蛋白质合成。 A2R和A2aR激动剂虽然能够抑制CF蛋白和胶原蛋白的合成,但却无法确定A2aR或A2bR的作用。 CF中A2bR的过表达导致胶原蛋白和蛋白质合成的基础水平显着降低,并与cAMP水平升高相关。然而,在较高剂量的ADO受体激动剂下,观察到蛋白质和胶原蛋白合成显着增加。具有A2bR表达不足的CF可增加蛋白质和胶原蛋白的合成。相反,A2aR的低表达并不能改变ADO诱导的CF蛋白或胶原蛋白合成的减少。总之,从受体水平的分子调控获得的结果表明,A2bR关键参与ADO介导的CF功能抑制。

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